PubMed Mentions
The links below are to publications on PubMed referring to LEAD-DBS. This list is gathered weekly from PubMed automatically and was last updated on December 17, 2025.
| Publication/References | |
| Holographic Reconstruction of Axonal Pathways in the Human Brain. Description: Petersen, Mikkel V, et al. Holographic Reconstruction of Axonal Pathways in the Human Brain. ''Neuron''. 2019 Dec 18; '''104''' (6):1056-1064.e3 | |
| Neural processes of auditory perception in Heschl's gyrus for upcoming acoustic stimuli in humans. Description: Hu, Minjing, et al. Neural processes of auditory perception in Heschl's gyrus for upcoming acoustic stimuli in humans. ''Hear Res''. 2020 Mar 15; '''388''': 107895 | |
| Deep brain stimulation: Imaging on a group level. Description: Treu, Svenja, et al. Deep brain stimulation: Imaging on a group level. ''Neuroimage''. 2020 Oct 1; '''219''': 117018 | |
| Normative vs. patient-specific brain connectivity in deep brain stimulation. Description: Wang, Qiang, et al. Normative vs. patient-specific brain connectivity in deep brain stimulation. ''Neuroimage''. 2021 Jan 1; '''224''': 117307 | |
| Distinct roles of dorsal and ventral subthalamic neurons in action selection and cancellation. Description: Mosher, Clayton P, et al. Distinct roles of dorsal and ventral subthalamic neurons in action selection and cancellation. ''Neuron''. 2021 Mar 3; '''109''' (5):869-881.e6 | |
| Rare long-range cortical connections enhance human information processing. Description: Deco, Gustavo, et al. Rare long-range cortical connections enhance human information processing. ''Curr Biol''. 2021 Oct 25; '''31''' (20):4436-4448.e5 | |
| A Unified Functional Network Target for Deep Brain Stimulation in Obsessive-Compulsive Disorder. Description: Li, Ningfei, et al. A Unified Functional Network Target for Deep Brain Stimulation in Obsessive-Compulsive Disorder. ''Biol Psychiatry''. 2021 Nov 15; '''90''' (10):701-713 | |
| Electrophysiological confrontation of Lead-DBS-based electrode localizations in patients with Parkinson's disease undergoing deep brain stimulation. Description: Al Awadhi, Abdullah, et al. Electrophysiological confrontation of Lead-DBS-based electrode localizations in patients with Parkinson's disease undergoing deep brain stimulation. ''Neuroimage Clin''. 2022; '''34''': 102971 | |
| White Matter Connectivity between Structures of the Basal Ganglia using 3T and 7T. Description: Shim, Jae-Hyuk, et al. White Matter Connectivity between Structures of the Basal Ganglia using 3T and 7T. ''Neuroscience''. 2022 Feb 10; '''483''': 32-39 | |
| Topographic connectivity and cellular profiling reveal detailed input pathways and functionally distinct cell types in the subthalamic nucleus. Description: Jeon, Hyungju, et al. Topographic connectivity and cellular profiling reveal detailed input pathways and functionally distinct cell types in the subthalamic nucleus. ''Cell Rep''. 2022 Mar 1; '''38''' (9):110439 | |
| Hyperdirect connectivity of opercular speech network to the subthalamic nucleus. Description: Jorge, Ahmed, et al. Hyperdirect connectivity of opercular speech network to the subthalamic nucleus. ''Cell Rep''. 2022 Mar 8; '''38''' (10):110477 | |
| Deep brain stimulation electrode modeling in rats. Description: Andree, Andrea, et al. Deep brain stimulation electrode modeling in rats. ''Exp Neurol''. 2022 Apr; '''350''': 113978 | |
| Metastable oscillatory modes emerge from synchronization in the brain spacetime connectome. Description: Cabral, Joana, et al. Metastable oscillatory modes emerge from synchronization in the brain spacetime connectome. ''Commun Phys''. 2022 Jul 15; '''5''': 184 | |
| Virtual deep brain stimulation: Multiscale co-simulation of a spiking basal ganglia model and a whole-brain mean-field model with The Virtual Brain. Description: Meier, Jil M, et al. Virtual deep brain stimulation: Multiscale co-simulation of a spiking basal ganglia model and a whole-brain mean-field model with The Virtual Brain. ''Exp Neurol''. 2022 Aug; '''354''': 114111 | |
| Functional connectivity maps of theta/alpha and beta coherence within the subthalamic nucleus region. Description: van Wijk, Bernadette C M, et al. Functional connectivity maps of theta/alpha and beta coherence within the subthalamic nucleus region. ''Neuroimage''. 2022 Aug 15; '''257''': 119320 | |
| Spectral and spatial distribution of subthalamic beta peak activity in Parkinson's disease patients. Description: Darcy, Natasha, et al. Spectral and spatial distribution of subthalamic beta peak activity in Parkinson's disease patients. ''Exp Neurol''. 2022 Oct; '''356''': 114150 | |
| Deep brain stimulation of the subgenual cingulum and uncinate fasciculus for the treatment of posttraumatic stress disorder. Description: Hamani, Clement, et al. Deep brain stimulation of the subgenual cingulum and uncinate fasciculus for the treatment of posttraumatic stress disorder. ''Sci Adv''. 2022 Dec 2; '''8''' (48):eadc9970 | |
| Optimal deep brain stimulation sites and networks for stimulation of the fornix in Alzheimer's disease. Description: Rios, Ana Sofia, et al. Optimal deep brain stimulation sites and networks for stimulation of the fornix in Alzheimer's disease. ''Nat Commun''. 2022 Dec 14; '''13''' (1):7707 | |
| A localized pallidal physiomarker in Meige syndrome. Description: Zhang, Bo, et al. A localized pallidal physiomarker in Meige syndrome. ''Front Neurol''. 2023; '''14''': 1286634 | |
| Magnetoencephalography to measure the effect of contact point-specific deep brain stimulation in Parkinson's disease: A proof of concept study. Description: Boon, Lennard I, et al. Magnetoencephalography to measure the effect of contact point-specific deep brain stimulation in Parkinson's disease: A proof of concept study. ''Neuroimage Clin''. 2023; '''38''': 103431 | |
| Optimal subthalamic stimulation sites and related networks for freezing of gait in Parkinson's disease. Description: Fan, Houyou, et al. Optimal subthalamic stimulation sites and related networks for freezing of gait in Parkinson's disease. ''Brain Commun''. 2023; '''5''' (5):fcad238 | |
| Distributed harmonic patterns of structure-function dependence orchestrate human consciousness. Description: Luppi, Andrea I, et al. Distributed harmonic patterns of structure-function dependence orchestrate human consciousness. ''Commun Biol''. 2023 Jan 28; '''6''' (1):117 | |
| Combining Multimodal Biomarkers to Guide Deep Brain Stimulation Programming in Parkinson Disease. Description: Shah, Ashesh, et al. Combining Multimodal Biomarkers to Guide Deep Brain Stimulation Programming in Parkinson Disease. ''Neuromodulation''. 2023 Feb; '''26''' (2):320-332 | |
| Pallidal neuromodulation of the explore/exploit trade-off in decision-making. Description: de A Marcelino, Ana Luisa, et al. Pallidal neuromodulation of the explore/exploit trade-off in decision-making. ''Elife''. 2023 Feb 2; '''12''': | |
| Deep brain stimulation of the nucleus accumbens in treatment-resistant alcohol use disorder: a double-blind randomized controlled multi-center trial. Description: Bach, Patrick, et al. Deep brain stimulation of the nucleus accumbens in treatment-resistant alcohol use disorder: a double-blind randomized controlled multi-center trial. ''Transl Psychiatry''. 2023 Feb 8; '''13''' (1):49 | |
| Subthalamic Nucleus Stimulation-Induced Local Field Potential Changes in Dystonia. Description: Wiest, Christoph, et al. Subthalamic Nucleus Stimulation-Induced Local Field Potential Changes in Dystonia. ''Mov Disord''. 2023 Mar; '''38''' (3):423-434 | |
| Segregating the Frontal Cortex with Deep Brain Stimulation. Description: Hollunder, Barbara, et al. Segregating the Frontal Cortex with Deep Brain Stimulation. ''medRxiv''. 2023 Mar 9; | |
| Multisensory Flicker Modulates Widespread Brain Networks and Reduces Interictal Epileptiform Discharges in Humans. Description: Blanpain, Lou T, et al. Multisensory Flicker Modulates Widespread Brain Networks and Reduces Interictal Epileptiform Discharges in Humans. ''medRxiv''. 2023 Mar 17; | |
| Improvement of obsessive-compulsive disorder after pallidothalamic tractotomy for cervical dystonia. Description: Horisawa, Shiro, et al. Improvement of obsessive-compulsive disorder after pallidothalamic tractotomy for cervical dystonia. ''Ann Clin Transl Neurol''. 2023 May; '''10''' (5):832-835 | |
| Structural and functional correlates of the response to deep brain stimulation at ventral capsule/ventral striatum region for treatment-resistant depression. Description: Lai, Yijie, et al. Structural and functional correlates of the response to deep brain stimulation at ventral capsule/ventral striatum region for treatment-resistant depression. ''J Neurol Neurosurg Psychiatry''. 2023 May; '''94''' (5):379-388 | |
| Multi-centre analysis of networks and genes modulated by hypothalamic stimulation in patients with aggressive behaviours. Description: Gouveia, Flavia Venetucci, et al. Multi-centre analysis of networks and genes modulated by hypothalamic stimulation in patients with aggressive behaviours. ''Elife''. 2023 May 22; '''12''': | |
| Critical scaling of whole-brain resting-state dynamics. Description: Ponce-Alvarez, Adrian, et al. Critical scaling of whole-brain resting-state dynamics. ''Commun Biol''. 2023 Jun 10; '''6''' (1):627 | |
| Neuroimaging-based analysis of DBS outcomes in pediatric dystonia: Insights from the GEPESTIM registry. Description: Al-Fatly, Bassam, et al. Neuroimaging-based analysis of DBS outcomes in pediatric dystonia: Insights from the GEPESTIM registry. ''Neuroimage Clin''. 2023 Jun 10; '''39''': 103449 | |
| Integrative roles of human amygdala subdivisions: Insight from direct intracerebral stimulations via stereotactic EEG. Description: Zhang, Huaqiang, et al. Integrative roles of human amygdala subdivisions: Insight from direct intracerebral stimulations via stereotactic EEG. ''Hum Brain Mapp''. 2023 Jun 15; '''44''' (9):3610-3623 | |
| Characteristics of ictal thalamic EEG in pediatric-onset neocortical focal epilepsy. Description: Edmonds, Benjamin, et al. Characteristics of ictal thalamic EEG in pediatric-onset neocortical focal epilepsy. ''medRxiv''. 2023 Jun 29; | |
| Multiscale effects of excitatory-inhibitory homeostasis in lesioned cortical networks: A computational study. Description: Pascoa Dos Santos, Francisco, et al. Multiscale effects of excitatory-inhibitory homeostasis in lesioned cortical networks: A computational study. ''PLoS Comput Biol''. 2023 Jul; '''19''' (7):e1011279 | |
| Emotional symptoms and cognitive function outcomes of subthalamic stimulation in Parkinson's disease depend on location of active contacts and the volume of tissue activated. Description: Liang, Kun, et al. Emotional symptoms and cognitive function outcomes of subthalamic stimulation in Parkinson's disease depend on location of active contacts and the volume of tissue activated. ''CNS Neurosci Ther''. 2023 Aug; '''29''' (8):2355-2365 | |
| Mapping Lesion-Related Epilepsy to a Human Brain Network. Description: Schaper, Frederic L W V J, et al. Mapping Lesion-Related Epilepsy to a Human Brain Network. ''JAMA Neurol''. 2023 Sep 1; '''80''' (9):891-902 | |
| Pathological pallidal beta activity in Parkinson's disease is sustained during sleep and associated with sleep disturbance. Description: Yin, Zixiao, et al. Pathological pallidal beta activity in Parkinson's disease is sustained during sleep and associated with sleep disturbance. ''Nat Commun''. 2023 Sep 5; '''14''' (1):5434 | |
| Invasive neurophysiology and whole brain connectomics for neural decoding in patients with brain implants. Description: Merk, Timon, et al. Invasive neurophysiology and whole brain connectomics for neural decoding in patients with brain implants. ''Res Sq''. 2023 Sep 20; | |
| Precision Mapping of Thalamic Deep Brain Stimulation Lead Positions Associated With the Microlesion Effect in Tourette Syndrome. Description: Morishita, Takashi, et al. Precision Mapping of Thalamic Deep Brain Stimulation Lead Positions Associated With the Microlesion Effect in Tourette Syndrome. ''Neurosurgery''. 2023 Oct 1; '''93''' (4):875-883 | |
| Connectivity-based segmentation of the thalamic motor region for deep brain stimulation in essential tremor: A comparison of deterministic and probabilistic tractography. Description: Tsolaki, Evangelia, et al. Connectivity-based segmentation of the thalamic motor region for deep brain stimulation in essential tremor: A comparison of deterministic and probabilistic tractography. ''Neuroimage Clin''. 2024; '''41''': 103587 | |
| Kinematic Effects of Combined Subthalamic and Dorsolateral Nigral Deep Brain Stimulation in Parkinson's Disease. Description: Kroneberg, Daniel, et al. Kinematic Effects of Combined Subthalamic and Dorsolateral Nigral Deep Brain Stimulation in Parkinson's Disease. ''J Parkinsons Dis''. 2024; '''14''' (2):269-282 | |
| Modeling impulsivity and risk aversion in the subthalamic nucleus with deep brain stimulation. Description: Voon, Valerie, et al. Modeling impulsivity and risk aversion in the subthalamic nucleus with deep brain stimulation. ''Nat Ment Health''. 2024; '''2''' (9):1084-1095 | |
| Predictive modeling of sensory responses in deep brain stimulation. Description: Halasz, Laszlo, et al. Predictive modeling of sensory responses in deep brain stimulation. ''Front Neurol''. 2024; '''15''': 1467307 | |
| Deep Brain Stimulation Improves Symptoms of Spasmodic Dysphonia Through Targeting of Thalamic Sensorimotor Connectivity. Description: Hart, Michael G, et al. Deep Brain Stimulation Improves Symptoms of Spasmodic Dysphonia Through Targeting of Thalamic Sensorimotor Connectivity. ''Neurosurgery''. 2024 Jan 22; '''94''' (6):1291-300 | |
| Image-guided programming deep brain stimulation improves clinical outcomes in patients with Parkinson's disease. Description: Torres, Viviana, et al. Image-guided programming deep brain stimulation improves clinical outcomes in patients with Parkinson's disease. ''NPJ Parkinsons Dis''. 2024 Jan 27; '''10''' (1):29 | |
| The Hopf whole-brain model and its linear approximation. Description: Ponce-Alvarez, Adrian, et al. The Hopf whole-brain model and its linear approximation. ''Sci Rep''. 2024 Jan 31; '''14''' (1):2615 | |
| Clinical outcomes of deep brain stimulation for obsessive-compulsive disorder: Insight as a predictor of symptom changes. Description: Acevedo, Nicola, et al. Clinical outcomes of deep brain stimulation for obsessive-compulsive disorder: Insight as a predictor of symptom changes. ''Psychiatry Clin Neurosci''. 2024 Feb; '''78''' (2):131-141 | |
| Coupling between beta band and high frequency oscillations as a clinically useful biomarker for DBS. Description: Bockova, Martina, et al. Coupling between beta band and high frequency oscillations as a clinically useful biomarker for DBS. ''NPJ Parkinsons Dis''. 2024 Feb 21; '''10''' (1):40 | |
| Mapping dysfunctional circuits in the frontal cortex using deep brain stimulation. Description: Hollunder, Barbara, et al. Mapping dysfunctional circuits in the frontal cortex using deep brain stimulation. ''Nat Neurosci''. 2024 Mar; '''27''' (3):573-586 | |
| Subthalamic nucleus deep brain stimulation alleviates oxidative stress via mitophagy in Parkinson's disease. Description: Chen, Yingchuan, et al. Subthalamic nucleus deep brain stimulation alleviates oxidative stress via mitophagy in Parkinson's disease. ''NPJ Parkinsons Dis''. 2024 Mar 6; '''10''' (1):52 | |
| Structural connectivity of low-frequency subthalamic stimulation for improving stride length in Parkinson's disease. Description: Calvano, Alexander, et al. Structural connectivity of low-frequency subthalamic stimulation for improving stride length in Parkinson's disease. ''Neuroimage Clin''. 2024 Mar 18; '''42''': 103591 | |
| Linking connectivity of deep brain stimulation of nucleus accumbens area with clinical depression improvements: a retrospective longitudinal case series. Description: Leserri, Simona, et al. Linking connectivity of deep brain stimulation of nucleus accumbens area with clinical depression improvements: a retrospective longitudinal case series. ''Eur Arch Psychiatry Clin Neurosci''. 2024 Apr; '''274''' (3):685-696 | |
| A large normative connectome for exploring the tractographic correlates of focal brain interventions. Description: Elias, Gavin J B, et al. A large normative connectome for exploring the tractographic correlates of focal brain interventions. ''Sci Data''. 2024 Apr 8; '''11''' (1):353 | |
| Neural signatures of indirect pathway activity during subthalamic stimulation in Parkinson's disease. Description: Steiner, Leon A, et al. Neural signatures of indirect pathway activity during subthalamic stimulation in Parkinson's disease. ''Nat Commun''. 2024 Apr 11; '''15''' (1):3130 | |
| Subthalamic stimulation modulates context-dependent effects of beta bursts during fine motor control. Description: Bange, Manuel, et al. Subthalamic stimulation modulates context-dependent effects of beta bursts during fine motor control. ''Nat Commun''. 2024 Apr 12; '''15''' (1):3166 | |
| Generalized sleep decoding with basal ganglia signals in multiple movement disorders. Description: Yin, Zixiao, et al. Generalized sleep decoding with basal ganglia signals in multiple movement disorders. ''NPJ Digit Med''. 2024 May 10; '''7''' (1):122 | |
| Microstructure predicts non-motor outcomes following deep brain stimulation in Parkinson's disease. Description: Loehrer, Philipp A, et al. Microstructure predicts non-motor outcomes following deep brain stimulation in Parkinson's disease. ''NPJ Parkinsons Dis''. 2024 May 18; '''10''' (1):104 | |
| Engaging dystonia networks with subthalamic stimulation. Description: Butenko, Konstantin, et al. Engaging dystonia networks with subthalamic stimulation. ''medRxiv''. 2024 May 25; | |
| Mixed anxiety-depressive disorder in Parkinson's disease associated with worse resting state functional response to deep brain stimulation of subthalamic nucleus. Description: Filip, Pavel, et al. Mixed anxiety-depressive disorder in Parkinson's disease associated with worse resting state functional response to deep brain stimulation of subthalamic nucleus. ''Heliyon''. 2024 May 30; '''10''' (10):e30698 | |
| Prediction of subthalamic stimulation efficacy on isolated dystonia via support vector regression. Description: Wu, Yunhao, et al. Prediction of subthalamic stimulation efficacy on isolated dystonia via support vector regression. ''Heliyon''. 2024 May 30; '''10''' (10):e31475 | |
| Time-resolved coupling between connectome harmonics and subjective experience under the psychedelic DMT. Description: Vohryzek, Jakub, et al. Time-resolved coupling between connectome harmonics and subjective experience under the psychedelic DMT. ''bioRxiv''. 2024 May 30; | |
| Deep brain stimulation of symptom-specific networks in Parkinson's disease. Description: Rajamani, Nanditha, et al. Deep brain stimulation of symptom-specific networks in Parkinson's disease. ''Nat Commun''. 2024 May 31; '''15''' (1):4662 | |
| Deep Brain Stimulation for Orthostatic Tremor: An Observational Study. Description: Babeliowsky, Wietske A, et al. Deep Brain Stimulation for Orthostatic Tremor: An Observational Study. ''Mov Disord Clin Pract''. 2024 Jun; '''11''' (6):676-685 | |
| Beta Burst-Driven Adaptive Deep Brain Stimulation Improves Gait Impairment and Freezing of Gait in Parkinson's Disease. Description: Wilkins, K B, et al. Beta Burst-Driven Adaptive Deep Brain Stimulation Improves Gait Impairment and Freezing of Gait in Parkinson's Disease. ''medRxiv''. 2024 Jun 27; | |
| Therapeutic DBS for OCD Suppresses the Default Mode Network. Description: Slepneva, Natalya, et al. Therapeutic DBS for OCD Suppresses the Default Mode Network. ''bioRxiv''. 2024 Jul 24; | |
| The critical dynamics of hippocampal seizures. Description: Lepeu, Gregory, et al. The critical dynamics of hippocampal seizures. ''Nat Commun''. 2024 Aug 13; '''15''' (1):6945 | |
| Surgical Concepts and Long-term Outcomes of Thalamic Deep Brain Stimulation in Patients with Severe Tourette Syndrome: A Single-center Experience. Description: Morishita, Takashi, et al. Surgical Concepts and Long-term Outcomes of Thalamic Deep Brain Stimulation in Patients with Severe Tourette Syndrome: A Single-center Experience. ''Neurol Med Chir (Tokyo)''. 2024 Aug 15; '''64''' (8):289-298 | |
| Disruption of neural periodicity predicts clinical response after deep brain stimulation for obsessive-compulsive disorder. Description: Provenza, Nicole R, et al. Disruption of neural periodicity predicts clinical response after deep brain stimulation for obsessive-compulsive disorder. ''Nat Med''. 2024 Oct; '''30''' (10):3004-3014 | |
| Striato-pallidal oscillatory connectivity correlates with symptom severity in dystonia patients. Description: Lofredi, Roxanne, et al. Striato-pallidal oscillatory connectivity correlates with symptom severity in dystonia patients. ''Nat Commun''. 2024 Oct 1; '''15''' (1):8475 | |
| Machine learning explains response variability of deep brain stimulation on Parkinson's disease quality of life. Description: Ferrea, Enrico, et al. Machine learning explains response variability of deep brain stimulation on Parkinson's disease quality of life. ''NPJ Digit Med''. 2024 Oct 2; '''7''' (1):269 | |
| Evaluating a motor progression connectivity model across Parkinson's disease stages. Description: Hacker, Mallory L, et al. Evaluating a motor progression connectivity model across Parkinson's disease stages. ''J Neurol''. 2024 Nov; '''271''' (11):7309-7315 | |
| Lateralized Subthalamic Stimulation for Axial Dysfunction in Parkinson's Disease: Exploratory Outcomes and Open-Label Extension. Description: Lizarraga, Karlo J, et al. Lateralized Subthalamic Stimulation for Axial Dysfunction in Parkinson's Disease: Exploratory Outcomes and Open-Label Extension. ''Mov Disord Clin Pract''. 2024 Nov; '''11''' (11):1421-1426 | |
| Subthalamic stimulation causally modulates human voluntary decision-making to stay or go. Description: Wang, Yichen, et al. Subthalamic stimulation causally modulates human voluntary decision-making to stay or go. ''NPJ Parkinsons Dis''. 2024 Nov 2; '''10''' (1):210 | |
| The effect of pallidal stimulation on sleep outcomes and related brain connectometries in Parkinson's disease. Description: Zheng, Zhaoting, et al. The effect of pallidal stimulation on sleep outcomes and related brain connectometries in Parkinson's disease. ''NPJ Parkinsons Dis''. 2024 Nov 4; '''10''' (1):212 | |
| Changes in Functional Connectivity Relate to Modulation of Cognitive Control by Subthalamic Stimulation. Description: Achtzehn, Johannes, et al. Changes in Functional Connectivity Relate to Modulation of Cognitive Control by Subthalamic Stimulation. ''Hum Brain Mapp''. 2024 Dec 1; '''45''' (17):e70095 | |
| Deep brain stimulation of the motor thalamus relieves experimentally induced air hunger. Description: Chapman, Tom P, et al. Deep brain stimulation of the motor thalamus relieves experimentally induced air hunger. ''Eur Respir J''. 2024 Dec; '''64''' (6): | |
| Enhancing cognitive performance prediction by white matter hyperintensity connectivity assessment. Description: Petersen, Marvin, et al. Enhancing cognitive performance prediction by white matter hyperintensity connectivity assessment. ''Brain''. 2024 Dec 3; '''147''' (12):4265-4279 | |
| Cortical beta oscillations map to shared brain networks modulated by dopamine. Description: Chikermane, Meera, et al. Cortical beta oscillations map to shared brain networks modulated by dopamine. ''Elife''. 2024 Dec 4; '''13''': | |
| A critical role of action-related functional networks in Gilles de la Tourette syndrome. Description: Baldermann, Juan Carlos, et al. A critical role of action-related functional networks in Gilles de la Tourette syndrome. ''Nat Commun''. 2024 Dec 16; '''15''' (1):10687 | |
| Lesion distribution and network mapping in dyskinetic cerebral palsy. Description: de Almeida Marcelino, Ana Luisa, et al. Lesion distribution and network mapping in dyskinetic cerebral palsy. ''Brain Commun''. 2025; '''7''' (3):fcaf228 | |
| Modulations of thalamo-cortical coupling during voluntary movement in patients with essential tremor. Description: Steina, Alexandra, et al. Modulations of thalamo-cortical coupling during voluntary movement in patients with essential tremor. ''Neuroimage Clin''. 2025; '''48''': 103848 | |
| Putaminal-cortical circuits predict response of bilateral deep brain stimulation of the subthalamic nucleus in the primary Meige syndrome after 5 years. Description: Wang, Ning, et al. Putaminal-cortical circuits predict response of bilateral deep brain stimulation of the subthalamic nucleus in the primary Meige syndrome after 5 years. ''Brain Commun''. 2025; '''7''' (1):fcaf042 | |
| Structural Connectivity of the Basal Ganglia from Patient-Individual Tractography Is Key for Understanding the Effects of Deep Brain Stimulation in Parkinson's Disease. Description: Loucao, Ricardo, et al. Structural Connectivity of the Basal Ganglia from Patient-Individual Tractography Is Key for Understanding the Effects of Deep Brain Stimulation in Parkinson's Disease. ''Stereotact Funct Neurosurg''. 2025; '''103''' (4):279-294 | |
| Sweet spot for resting-state functional MRI effect of deep brain stimulation in dystonia lies in the lower pallidal area. Description: Filip, Pavel, et al. Sweet spot for resting-state functional MRI effect of deep brain stimulation in dystonia lies in the lower pallidal area. ''Neuroimage Clin''. 2025; '''45''': 103750 | |
| Sweet spot mapping and structural connectivity in subthalamic stimulation: predicting neuropsychiatric outcomes in Parkinson's disease. Description: Yan, Jiuqi, et al. Sweet spot mapping and structural connectivity in subthalamic stimulation: predicting neuropsychiatric outcomes in Parkinson's disease. ''Front Neurosci''. 2025; '''19''': 1577588 | |
| The impact of localization and registration accuracy on estimates of deep brain stimulation electrode position in stereotactic space. Description: Abbass, Mohamad, et al. The impact of localization and registration accuracy on estimates of deep brain stimulation electrode position in stereotactic space. ''Imaging Neurosci (Camb)''. 2025; '''3''': | |
| Geometric influences on the regional organization of the mammalian brain. Description: Pang, James C, et al. Geometric influences on the regional organization of the mammalian brain. ''bioRxiv''. 2025 Feb 1; | |
| Low-Frequency Deep Brain Stimulation in Non-Rapid Eye Movement Sleep Modifies Memory Retention in Parkinson's Disease. Description: Herz, Damian M, et al. Low-Frequency Deep Brain Stimulation in Non-Rapid Eye Movement Sleep Modifies Memory Retention in Parkinson's Disease. ''Mov Disord''. 2025 Feb; '''40''' (2):285-291 | |
| Subthalamic Nucleus Deep Brain Stimulation in the Beta Frequency Range Boosts Cortical Beta Oscillations and Slows Down Movement. Description: Werner, Lucy M, et al. Subthalamic Nucleus Deep Brain Stimulation in the Beta Frequency Range Boosts Cortical Beta Oscillations and Slows Down Movement. ''J Neurosci''. 2025 Feb 26; '''45''' (9): | |
| Whole-brain turbulent dynamics predict responsiveness to pharmacological treatment in major depressive disorder. Description: Escrichs, Anira, et al. Whole-brain turbulent dynamics predict responsiveness to pharmacological treatment in major depressive disorder. ''Mol Psychiatry''. 2025 Mar; '''30''' (3):1069-1079 | |
| Lesion and lesion network localization of dysnomia after epilepsy surgery. Description: Mhanna, Asmaa, et al. Lesion and lesion network localization of dysnomia after epilepsy surgery. ''Brain''. 2025 Mar 6; '''148''' (3):776-787 | |
| Remission of alcohol use disorder following traumatic brain injury with focal orbitofrontal cortex hemorrhage: case report and network mapping. Description: Haque, Saarah, et al. Remission of alcohol use disorder following traumatic brain injury with focal orbitofrontal cortex hemorrhage: case report and network mapping. ''Commun Med (Lond)''. 2025 Mar 12; '''5''' (1):69 | |
| B(RAIN)(2)-BRAIN integrated Resource for Anatomy and Intracranial Neurophysiology. Description: Alijanpourotaghsara, Amirreza, et al. B(RAIN)(2)-BRAIN integrated Resource for Anatomy and Intracranial Neurophysiology. ''Sci Data''. 2025 Mar 15; '''12''' (1):442 | |
| Individualized non-invasive deep brain stimulation of the basal ganglia using transcranial ultrasound stimulation. Description: Darmani, Ghazaleh, et al. Individualized non-invasive deep brain stimulation of the basal ganglia using transcranial ultrasound stimulation. ''Nat Commun''. 2025 Mar 19; '''16''' (1):2693 | |
| Protocol to study the neural mechanism of music therapy in alleviating depression using EEG-LFP signal recording. Description: Lin, Qixuan, et al. Protocol to study the neural mechanism of music therapy in alleviating depression using EEG-LFP signal recording. ''STAR Protoc''. 2025 Mar 21; '''6''' (1):103602 | |
| A generalized epilepsy network derived from brain abnormalities and deep brain stimulation. Description: Ji, Gong-Jun, et al. A generalized epilepsy network derived from brain abnormalities and deep brain stimulation. ''Nat Commun''. 2025 Mar 24; '''16''' (1):2783 | |
| Subthalamic Deep Brain Stimulation: Mapping Non-Motor Outcomes to Structural Connections. Description: Meyer, Garance M, et al. Subthalamic Deep Brain Stimulation: Mapping Non-Motor Outcomes to Structural Connections. ''Hum Brain Mapp''. 2025 Apr 1; '''46''' (5):e70207 | |
| Non-invasive brain stimulation to modulate neural activity in Parkinson's disease. Description: Bange, Manuel, et al. Non-invasive brain stimulation to modulate neural activity in Parkinson's disease. ''NPJ Parkinsons Dis''. 2025 Apr 5; '''11''' (1):68 | |
| Scalp block improves electrophysiological stability and patient cooperation during deep brain stimulation surgery. Description: Xie, Sining, et al. Scalp block improves electrophysiological stability and patient cooperation during deep brain stimulation surgery. ''Sci Rep''. 2025 Apr 12; '''15''' (1):12596 | |
| Shared pathway-specific network mechanisms of dopamine and deep brain stimulation for the treatment of Parkinson's disease. Description: Binns, Thomas S, et al. Shared pathway-specific network mechanisms of dopamine and deep brain stimulation for the treatment of Parkinson's disease. ''Nat Commun''. 2025 Apr 15; '''16''' (1):3587 | |
| Microstructure is associated with motor outcomes following Deep Brain Stimulation in Parkinson's disease. Description: Loehrer, Philipp Alexander, et al. Microstructure is associated with motor outcomes following Deep Brain Stimulation in Parkinson's disease. ''NPJ Parkinsons Dis''. 2025 Apr 21; '''11''' (1):81 | |
| Subthalamic stimulation evokes hyperdirect high beta interruption and cortical high gamma entrainment in Parkinson's disease. Description: Berki, Adam Jozsef, et al. Subthalamic stimulation evokes hyperdirect high beta interruption and cortical high gamma entrainment in Parkinson's disease. ''NPJ Parkinsons Dis''. 2025 Apr 26; '''11''' (1):95 | |
| Optimal focused ultrasound lesion location in essential tremor. Description: Chua, Melissa M J, et al. Optimal focused ultrasound lesion location in essential tremor. ''Sci Adv''. 2025 May 16; '''11''' (20):eadp0532 | |
| Convergent mapping of a tremor treatment network. Description: Goede, Lukas L, et al. Convergent mapping of a tremor treatment network. ''Nat Commun''. 2025 May 22; '''16''' (1):4772 | |
| Precision of post-operative localization of deep brain stimulation electrodes. Description: Lasica, Andrej, et al. Precision of post-operative localization of deep brain stimulation electrodes. ''Sci Rep''. 2025 May 28; '''15''' (1):18652 | |
| Biomarker changes associated with fornix deep brain stimulation in Alzheimer's disease. Description: Germann, Jurgen, et al. Biomarker changes associated with fornix deep brain stimulation in Alzheimer's disease. ''Alzheimers Dement''. 2025 Jun; '''21''' (6):e70394 | |
| Long-Term Benefit of Thalamic Deep Brain Stimulation in POLR3A Mutation-Associated Action Tremor. Description: Minnerop, Martina, et al. Long-Term Benefit of Thalamic Deep Brain Stimulation in POLR3A Mutation-Associated Action Tremor. ''Mov Disord Clin Pract''. 2025 Jun; '''12''' (6):882-884 | |
| Noninvasive Temporal Interference Stimulation of the Subthalamic Nucleus in Parkinson's Disease Reduces Beta Activity. Description: Lamos, Martin, et al. Noninvasive Temporal Interference Stimulation of the Subthalamic Nucleus in Parkinson's Disease Reduces Beta Activity. ''Mov Disord''. 2025 Jun; '''40''' (6):1051-1060 | |
| Microelectrode recording-guided globus pallidus pars internus deep brain stimulation treats dystonia under general anaesthesia: a retrospective experience of one center. Description: Zhang, Changming, et al. Microelectrode recording-guided globus pallidus pars internus deep brain stimulation treats dystonia under general anaesthesia: a retrospective experience of one center. ''Acta Neurochir (Wien)''. 2025 Jul 4; '''167''' (1):184 | |
| Theta-frequency subthalamic stimulation enhances conflict resolution in Parkinson's disease patients with freezing of gait through frontal cortex modulation. Description: Xie, Hutao, et al. Theta-frequency subthalamic stimulation enhances conflict resolution in Parkinson's disease patients with freezing of gait through frontal cortex modulation. ''NPJ Parkinsons Dis''. 2025 Jul 10; '''11''' (1):206 | |
| A human brain network linked to restoration of consciousness after deep brain stimulation. Description: Warren, Aaron E L, et al. A human brain network linked to restoration of consciousness after deep brain stimulation. ''Nat Commun''. 2025 Jul 21; '''16''' (1):6721 | |
| Clinical MRI to predict motor and non-motor effects of deep brain stimulation in Parkinson disease. Description: Campisi, Corrado, et al. Clinical MRI to predict motor and non-motor effects of deep brain stimulation in Parkinson disease. ''Radiol Med''. 2025 Aug; '''130''' (8):1263-1274 | |
| Optimal Stimulation Sites and Connectomes for GPi and STN-DBS in Cervical Dystonia. Description: Xue, Tao, et al. Optimal Stimulation Sites and Connectomes for GPi and STN-DBS in Cervical Dystonia. ''CNS Neurosci Ther''. 2025 Aug; '''31''' (8):e70561 | |
| Deep brain stimulation is well tolerated and effective following ProSavin(R) gene therapy for Parkinson's disease. Description: Senova, S, et al. Deep brain stimulation is well tolerated and effective following ProSavin(R) gene therapy for Parkinson's disease. ''Neurotherapeutics''. 2025 Sep; '''22''' (5):e00629 | |
| Low/High Multi-Frequency Stimulation of the Subthalamic Nucleus Improves Verbal Fluency Maintaining Motor Control in Parkinson's Disease. Description: Ricciardi, Lucia, et al. Low/High Multi-Frequency Stimulation of the Subthalamic Nucleus Improves Verbal Fluency Maintaining Motor Control in Parkinson's Disease. ''Mov Disord''. 2025 Sep; '''40''' (9):1892-1900 | |
| Differential modulation of movement speed with state-dependent deep brain stimulation in Parkinson's disease. Description: Cavallo, Alessia, et al. Differential modulation of movement speed with state-dependent deep brain stimulation in Parkinson's disease. ''Sci Adv''. 2025 Sep 12; '''11''' (37):eadx6849 | |
| Connectivity-Based Analysis of the Stimulation Effects of Globus Pallidus Interna Deep Brain Stimulation in Parkinson's Disease: A Focus on Freezing of Gait. Description: Jo, Sungyang, et al. Connectivity-Based Analysis of the Stimulation Effects of Globus Pallidus Interna Deep Brain Stimulation in Parkinson's Disease: A Focus on Freezing of Gait. ''J Mov Disord''. 2025 Oct; '''18''' (4):327-336 | |
| Reconfiguration of functional brain hierarchy in schizophrenia. Description: Acero-Pousa, Irene, et al. Reconfiguration of functional brain hierarchy in schizophrenia. ''Transl Psychiatry''. 2025 Oct 6; '''15''' (1):356 | |
| Effects of deep brain stimulation of the nucleus accumbens and anterior limb of the internal capsule on heroin addiction: Over five years of long-term follow-up in a prospective open-label pilot study. Description: Ge, Shunnan, et al. Effects of deep brain stimulation of the nucleus accumbens and anterior limb of the internal capsule on heroin addiction: Over five years of long-term follow-up in a prospective open-label pilot study. ''Transl Psychiatry''. 2025 Oct 17; '''15''' (1):415 | |
| Status dystonicus is a distinct state characterized by pallidal beta-band activity. Description: Balachandar, Arjun, et al. Status dystonicus is a distinct state characterized by pallidal beta-band activity. ''Nat Commun''. 2025 Oct 22; '''16''' (1):9352 | |
| Prefrontal-bed nucleus of the stria terminalis physiological and neuropsychological biomarkers predict therapeutic outcomes in depression. Description: Wang, Linbin, et al. Prefrontal-bed nucleus of the stria terminalis physiological and neuropsychological biomarkers predict therapeutic outcomes in depression. ''Nat Commun''. 2025 Nov 18; '''16''' (1):10034 |
